Oil type phase shift transformer for medium voltage inverter system
10069437 ยท 2018-09-04
Assignee
Inventors
Cpc classification
H01F27/04
ELECTRICITY
H01H2009/005
ELECTRICITY
H01H9/0044
ELECTRICITY
H01F29/02
ELECTRICITY
International classification
H01F27/29
ELECTRICITY
H01F27/04
ELECTRICITY
H01F29/02
ELECTRICITY
Abstract
Disclosed is a phase shift transformer for supplying voltage to a plurality of unit power cells in a medium voltage inverter system. The phase shift transformer according to the present invention comprises a first bushing arranged by the side of a tank and connected to a first winding to apply high voltage and a plurality of second bushings arranged on the top of a cover and connected to each of a plurality of second windings to output low voltage, wherein three outputs of the plurality of second bushings can be applied to unit power cells.
Claims
1. A phase shift transformer for supplying voltage to a plurality of unit power cells in a medium voltage inverter system, comprising: a first winding configured to surround an outside of a core and to which a three-phase high voltage is applied; a plurality of second windings configured to surround the outside of the core and to convert the three-phase high voltage applied thereto from the first winding to a low voltage; a tank providing an internal space in which the core, the first winding, and the plurality of second windings are arranged, and the tank containing an insulating oil therein; a cover provided on the top of the tank to provide a sealed internal space along with the tank; a first bushing arranged by the side of the tank and connected to the first winding to apply the three-phase high voltage; a plurality of second bushings arranged on the top of the cover and connected to each of the plurality of second windings to output the low voltage, radiators arranged on front and back surfaces of the tank to cool the insulating oil or the first winding and the second windings; an oil conservator disposed on the top of the tank and connected to the tank; and a housing in which the plurality of second bushings are arranged, wherein a cover thereof is capable of being opened and closed, wherein the plurality of second bushings supply the three-phase high voltage to the plurality of unit power cells, and wherein three outputs of the plurality of second bushings are connected to the unit power cells.
2. The phase shift transformer of claim 1, further comprising a tap changer arranged on the top of the cover to control voltage variation during operation of the phase shift transformer.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DETAILED DESCRIPTION
(11) As the present invention may have different embodiments and various modifications thereto, specific embodiments are illustrated in the drawings and described in detail in the following description. This, however, is by no means to restrict the present invention to the specific embodiments, it is to be understood to include all changes, equivalents, and substitutes falling within the spirit and scope of the present invention.
(12) Preferred embodiments of the present invention will now be described in detail with reference to the accompanying drawings. In this process, sizes or shapes of constituent elements shown in the drawings may be exaggerated for clarity and convenience in explanation.
(13)
(14) As shown in the figure, the medium voltage inverter system to which the present invention is applied comprises an oil type phase shift transformer 1 and a plurality of unit power cells 2 according to an embodiment of the present invention. The resulting voltage output from the plurality of unit power cells 2 can be output to a three phase electric motor 3.
(15) The phase shift transformer 1, of which primary side input is about 3 to 11 kV and secondary side output is about 635V, may be composed of a plurality of coils.
(16) A plurality of unit power cells 2 may stack secondary side voltages to make up a variable output to apply to an electric motor.
(17)
(18) As shown in the figure, as the phase shift transformer 1 is configured as an oil type phase shift transformer, there is no need for the phase shift transformer to be installed indoors and thus, it is possible to place only a panel containing the plurality of unit power cells 2 indoors. Therefore, it can be seen that spatial degrees of freedom are increased because of no requirement for the space where the phase shift transformer 1 has been placed.
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(20) As shown in the figure, windings 13 and 15 are configured to surround the outside of a core 10, wherein the windings include a primary winding 13 (hereinafter, referred to as first winding) and a secondary winding 15 (hereinafter, referred to as second winding). Structure of the second winding 15 may be determined depending on the number of unit power cells 2.
(21) Three phase voltage of about 3 to 11 kV may be applied to three high voltage bushings 20, and then voltage of 635V may be output to a plurality of low voltage bushings 25 through the second winding 15 via the first winding 13. In this case, the high voltage bushing means a connection element for applying high voltage power to be supplied from the outside to the windings, which is also referred to as a primary bushing. In addition, the low voltage bushing means a connection element for drawing out the transformed low voltage power to the outside, which is also referred to as a secondary bushing.
(22) The core 10 may be formed in a shell type and windings 13, 15 may be configured such that they have high conductivity and the outsides thereof are electrically insulated.
(23) These windings and core may be contained in a tank filled with insulating oil, as described later.
(24) Hereinafter, external constitution of the oil type transformer will be described with reference to the drawings.
(25)
(26) As shown in the figures, the oil type phase shift transformer 1 according to an embodiment of the present invention comprises a tank 30 for providing an internal space in which the core 10 and the windings 13, 15 are arranged and also comprises a cover 35 provided on the top of the tank 30. The tank 30 and the cover 35 may provide a sealed internal space.
(27) The first winding 13 and the second winding 15 are arranged inside the tank 30 filled with the insulating oil.
(28) A high voltage bushing 20 which is connected to the first high voltage winding 13 may be disposed by the side of the tank 30 while a plurality of low voltage bushings 25 which are connected to the second low voltage winding 15 may be disposed on the cover 35. The plurality of low voltage bushings 25 are to supply three phase voltage to the plurality of unit power cells 2 wherein three low voltage bushings 25 may be connected to a single power cell 2.
(29) In this embodiment of the present invention, 54 low pressure bushings 25 are shown as having been designed, but it is apparent that the present invention is not limited to those number. That is, various number of the low voltage bushings 25 may be provided depending on output of the inverter.
(30) The tank 30 may have a structure such as a welded steel vessel. By virtue of such structure, the transformer 1 can be lifted or moved without any leakage of insulating oil. Further, the cover 35 may be fastened to the tank 30 in a manner of gasket sealing by means of bolts. The gasket may be made as a type that can withstand hot oil.
(31) The front and back surfaces of the tank 30 are provided with radiators 40, 45 for cooling. The radiators 40, 45 may be operated such that temperature of the windings 13, 15 or insulating oil does not exceed a certain limit.
(32) One side of the cover 35 may be provided with an oil conservator 50. The oil conservator is to prevent the oil in the oil type transformer 1 from being exposed to the air because the oil can be deteriorated when it contacts with the air. In other words, a cylindrical vessel of a small volume, which is referred to as a conservator 50, is disposed on the top of the tank 30 and connected to the tank 30 such that no air exists in the tank 30. Accordingly, the surface area where the insulating oil contacts with the air becomes small and the air does not directly flow in and out of the tank 30 during respiration of the tank so that deterioration of the insulating oil is prevented.
(33) A tap changer 55 may be arranged on the top of the cover 35. In an embodiment of the invention, the tap changer 55 may be a no load tap changer (NLTC), but the present invention is not limited thereto. Voltage of the transformer 1 can be reset externally through the tap changer 55. That is, a tap of the tap changer 55 can be adjusted during operation of the transformer 1, thereby adjusting voltage of the transformer 1.
(34) Referring to
(35) Three low voltage bushings 25 may be connected to a single power cell 2 because voltage input to the single power cell 2 is three phase voltage.
(36) As the oil type phase shift transformer 1 for the inverter system, according to the present invention, becomes a structure corresponding to IP 54 rating, it can be installed in various places such as indoors or outdoors.
(37) Therefore, as the transformer 1 can be installed outdoors, it is possible to install only the power cells 2 indoors so that the spatial degrees of freedom are increased and it is also possible to manage separately high voltage devices and low voltage devices.
(38) In the foregoing description, preferred embodiments according to the present invention are described, but they are merely exemplary examples of the invention. It is to be understood by those having ordinary skill in the art that various modifications and other embodiment equivalent to the invention can be made from the details discussed above. Therefore, the true scope of the present invention should be defined by the appended claims.